Patents Assigned to Tokyo Electric Power Company
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Patent number: 7735359Abstract: A process quantity measurement method with which an engine output is accurately measured in a relatively simple manner. Torque of an engine is measured based on the amount of torsion of the output shaft of the engine, and an engine output is obtained based on the measured torque. On the other hand, an engine output is calculated based on input and output heat quantity, and a difference between the engine output based on the torque and the engine output based on the input and output heat quantity is obtained in advance. When the engine is operated, the previously obtained difference is added to the engine output that is based on the calculated input and output heat quantity to obtain the engine output.Type: GrantFiled: November 14, 2005Date of Patent: June 15, 2010Assignee: The Tokyo Electric Power Company, IncorporatedInventors: Shuichi Umezawa, Junichi Okada
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Patent number: 7712382Abstract: A doppler ultrasonic flowmeter including: an ultrasonic transmission member for casting ultrasonic pulses onto the fluid within a fluid tube, which is to be measured, along a measurement line from an ultrasonic transducer, a flow-speed distribution measurement unit for receiving ultrasonic echoes reflected from the measurement region due to ultrasonic pulses cast onto the fluid to be measured so as to measure the flow-speed distribution of the fluid to be measured in the measurement region; a flow measurement unit for measuring the flow of the fluid to be measured; and a transducer position adjusting mechanism for adjusting the relative position of a pair of ultrasonic transducers serving as the ultrasonic transmission member, a first transducer and a second transducer, which are disposed away one from another along the axial direction of a fluid tube.Type: GrantFiled: June 3, 2003Date of Patent: May 11, 2010Assignees: The Tokyo Electric Power Company, IncorporatedInventors: Yasushi Takeda, Michitsugu Mori
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Patent number: 7655900Abstract: An influence on a sensor output is suppressed to a minimum degree even in the case when there is a ripple in a light source, thereby improving the measurement accuracy. In an intensity modulation type optical sensor, light from a light source 1 is guided to a sensor head 6, the intensity of the light is modulated on the basis of an alternating current (AC) measured object (for example, a current i) changing with time, the modulated light is received in a light receiving element 81 and converted into an electrical signal, and a normalized received signal Xs indicating a degree of modulation is acquired from a ratio of an AC component As and a DC component Ds of the electrical signal to thereby acquiring a value of the AC measured object.Type: GrantFiled: March 1, 2006Date of Patent: February 2, 2010Assignee: The Tokyo Electric Power Company, IncorporatedInventors: Kiyoshi Kurosawa, Kazuomi Shirakawa
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Publication number: 20090315402Abstract: In order to provide an AC-DC conversion device which is capable of making a small-sized, inexpensive system even in a case of an instantaneous voltage reduction capacity compensation capacity >> a load leveling capacity. The conversion device is constituted by connecting a fast switch between the commercial power source and the load and by connecting a PCS including a power storage unit, an AC-DC converter, and a linking transformer between the fast switch and the load. A part of a capacity constituting the power storage unit is constituted by an NaS battery and most of the reminder of the capacity is constituted by electric double layer capacitors.Type: ApplicationFiled: October 4, 2007Publication date: December 24, 2009Applicants: THE TOKYO ELECTRIC POWER COMPANY, INCORPORATED, MEIDENSHA CORPORATIONInventors: Kenichi Suzuki, Naruhiko Fukuda
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Publication number: 20090304563Abstract: The present invention provides a mercury removal system and method for effectively removing a mercury component, which is present in a gas stream in an extremely small amount in wet gas cleaning used for coal or heavy oil gasification, petroleum refining and the like. The mercury removal system in wet gas cleaning comprises a water washing tower for introducing therein a target gas containing a mercury component and transferring the mercury component into an absorbing solution, a flush drum (10) for flushing the absorbing solution discharged from the water washing tower to separate the absorbing solution into a gas component and waste water, an oxidation treatment means (1) for adding an oxidizing agent to the absorbing solution at the preceding stage of the flush drum, and a waste water treatment means for subjecting to coagulation sedimentation treatment the separated waste water containing the mercury component at the following stage of the flush drum to dispose of the mercury component as sludge.Type: ApplicationFiled: June 9, 2006Publication date: December 10, 2009Applicants: MITSUBISHI HEAVY INDUSTRIES, LTD., CLEAN COAL POWER R&D CO., LTD., HOKKAIDO ELECTRIC POWER COMPANY INC., TOHOKU ELECTRIC POWER CO., INC., THE TOKYO ELECTRIC POWER COMPANY INC., CHUBU ELECTRIC POWER CO., INC., HOKURIKU ELECTRIC POWER COMPANY, THE KANSAI ELECTRIC POWER CO., INC., THE CHUGOKU ELECTRIC POWER CO., INC., SHIKOKU ELECTRIC POWER CO., INC., KYUSHU ELECTRIC POWER CO., INC., ELECTRIC POWER DEVELOPMENT CO., LTD., CENTRAL RESEARCH INSTITUTE OF ELECTRIC POWER INDUSTRYInventors: Masahiro Harada, Makoto Susaki, Shintaro Honjo, Shuji Kameyama, Masaki Nakahara, Akira Kisei
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Patent number: 7589515Abstract: [Problem] To permit reduction in the temperature dependence of a sensor, which is ascribable to the temperature dependence of the Verdet constant of a sensor fiber, at a low cost. [Means for Resolution] In a prior-art optical sensor fiber of reflection type, reduction in the temperature dependence of a sensor is coped with by, e.g., duplexing a signal processing circuit and a receiving optical system, so as to execute the mean processing of modulation signals, whereas in this invention, the elimination of the temperature dependence of a modulation signal is realized by selecting a ferromagnetic Faraday rotor 13 so that a modulation degree (Sout) expressed by the ratio between an AC component and a DC component may become constant or within a certain range, so as to especially simplify a configuration and to attain a lower cost.Type: GrantFiled: August 17, 2005Date of Patent: September 15, 2009Assignee: The Tokyo Electric Power Company, IncorporatedInventors: Kiyoshi Kurosawa, Kazuomi Shirakawa
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Publication number: 20090212763Abstract: [Object] A simple constitution together with an easy calibration of output by realizing a fast light intensity detection method is realized without using the carrier signal. [Solution] An optical sensor, including: a sensor to which light from a light source is lead, and by which light intensity of the light is modulated based on a physical value; light receiving elements 61 and 62 receiving two elements of divided light PA and PB having polarized waves which are orthogonally crossing each other; a variable optical attenuator operating light which is received by the light receiving elements 61 and 62; and a variable amplifier operating output signals from the light receiving elements 61 and 62, wherein both a zero point of a sensor output and sensitivity are calibrated based on a light attenuation factor or an amplification factor which is adjusted when a physical value is detected by calculating a ratio between a sum and a difference of outputs of the light receiving elements 61 and 62.Type: ApplicationFiled: March 1, 2006Publication date: August 27, 2009Applicant: The Tokyo Electric Power Company, Inc.,Inventors: Kiyoshi Kurosawa, Kazuomi Shirakawa
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Patent number: 7579712Abstract: A power system protection system prevents a voltage drop resulting from the reactive power characteristic of a power system. A main device for acquiring a system electric quantity of one or a plurality of upper substations detects a voltage drop resulting from the reactive power characteristic of the power system and transmits a detection signal of the voltage drop to a terminal device for acquiring a system electric quantity of one or a plurality of lower substations. Each terminal device sequentially sheds loads starting from those suffering more from the influence of the voltage drop resulting from the reactive power characteristic based on the load voltage and load current of a load bus.Type: GrantFiled: March 16, 2004Date of Patent: August 25, 2009Assignees: The Tokyo Electric Power Company, Kabushiki Kaisha ToshibaInventors: Ken Yanagihashi, Mamoru Suzuki, Takafumi Maeda, Akira Ishibashi, Yasuchika Nishitani
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Publication number: 20090185900Abstract: The present invention provides a wind power generation device capable of reducing collision of a flying object against a blade or bird strike. The wind power generation device includes a tower set up on the ground, a nacelle fixed to the tower, a plurality of blades rotatably fixed to the nacelle via a hub, an obstacle search device capable of detecting a flying object existing in front, on the windward side, and a blade angle controller to control the change in angle of the blade including a rotation stop position. The obstacle search device searches for the flying object continuously, and when the flying object is determined to be approaching based on the continuous searching, the blade angle controller controls to change the blades to the rotation stop position.Type: ApplicationFiled: April 27, 2006Publication date: July 23, 2009Applicant: THE TOKYO ELECTRIC POWER COMPANY, INCORPORATEDInventors: Naoto Hirakata, Hideaki Tezuka
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Patent number: 7555890Abstract: A combined cycle power plant of the present invention is configured of a compressor; a combustor for combusting compressed air compressed by the compressor together with supplied fuel; a gas turbine driven by a combustion gas exhausted from the combustor; a heat recovery steam generator for recovering high temperature exhaust heat exhausted from the gas turbine; a steam turbine driven by steam obtained from the heat recovery steam generator; and an exhaust gas duct having an HRSG inlet duct that is provided between the gas turbine and the heat recovery steam generator and introduces an exhaust passage into the heat recovery steam generator, and a bypass stack that leads the exhaust gas outside, wherein the exhaust duct is configured of a damper, a damper drive for changing any of angle and opening of the damper, and a guide mechanism for preventing a vibration of the damper.Type: GrantFiled: May 18, 2005Date of Patent: July 7, 2009Assignees: Hitachi, Ltd., The Tokyo Electric Power Company, Incorporated, Babcock-Hitachi K.K.Inventors: Tadashi Kurihara, Toshinori Shigenaka, Kazuhiro Takenaga, Shoji Nagai, Shinichi Taniguchi
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Publication number: 20090140195Abstract: An object is to provide a gate valve capable of preventing operational deficiencies caused by particulate materials accumulating in a valve box, thus providing superior sealing properties and high durability, having a simple structure, and allowing inspection and maintenance to be performed easily.Type: ApplicationFiled: November 29, 2007Publication date: June 4, 2009Applicants: MITSUBISHI HEAVY INDUSTRIES, LTD., HIRATA VALVE INDUSTRY CO., LTD., Clean Coal Power R&D Co., LTD., Hokkaido Electric Power Company, Incorporated, Tohoku Electric Power Co., Inc., THE TOKYO ELECTRIC POWER COMPANY, INCORPORATED, CHUBU Electric Power Co., Inc., HOKURIKU ELECTRIC POWER COMPANY, THE KANSAI ELECTRIC POWER CO., INC., THE CHUGOKU ELECTRIC POWER CO., INC., SHIKOKU ELECTRIC POWER CO., INC., KYUSHU ELECTRIC POWER CO., INC., ELECTRIC POWER DEVELOPMENT CO., LTD., Central Research Institute of Electric Power IndustryInventors: Yasunari Shibata, Yoshinori Koyama, Soken Takase, Taizo Hoshino, Shuji Kameyama, Yasuhiro Suzuki, Yoshihiko Horie, Hitoshi Terada, Hirofumi Yamada
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Publication number: 20090071616Abstract: This method of upgrading a biomass comprises: an upgrading step for performing upgrading treatment of a cellulose based biomass with an oxygen/carbon atomic ratio of at least 0.5, in presence of water and under a pressure of at least saturated water vapor pressure, and reducing said oxygen/carbon atomic ratio of said biomass to no more than 0.38, and a separation step for separating an upgraded reactant obtained from said upgrading step into a solid component and a liquid component.Type: ApplicationFiled: November 3, 2008Publication date: March 19, 2009Applicants: JGC CORPORATION, The Tokyo Electric Power Company, IncorporatedInventors: Chiaki Suyama, Shinichi Tokuda, Masao Tsurui, Yoshinori Suto, Koji Tamura, Tsutomu Katagiri, Teruo Nagai, Jin Ogawa, Takeshi Yamaguchi
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Publication number: 20090056415Abstract: An art of hydrogen concentration measurement in which the hydrogen concentration of any given location of an object to be measured can be nondestructively obtained is provided.Type: ApplicationFiled: March 16, 2006Publication date: March 5, 2009Applicants: The Tokyo Electric Power Company, Incorporated, Global Nuclear Fuel-Japan Co., Ltd.Inventors: Yoshiaki Ishii, Akihiro Miyazaki, Masafumi Nakatsuka, Shinji Ishimoto
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Patent number: 7483826Abstract: This invention relates to a method of determining stability of unstable equilibrium point (UEP) computed by using BCU method, comprising selecting UEP computed by using BCU method, obtaining a test vector Xtest for the selected UEP, say XUEP using the following equation: Xtest=Xspost+0.99(XUEP?Xspost) where Xspost is the SEP, and checking boundary condition of XUEP by simulating system trajectory of post-fault original system starting from Xtest.Type: GrantFiled: February 9, 2005Date of Patent: January 27, 2009Assignees: The Tokyo Electric Power Company, Incorporated, Bigwood Systems, IncorporatedInventors: Hsiao-Dong Chiang, Hua Li, Yasuyuki Tada, Tsuyoshi Takazawa, Takeshi Yamada, Atsushi Kurita, Kaoru Koyanagi
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Publication number: 20080307704Abstract: It is an object to solve a bypass line corrosion problem effectively, enable prompt supply of a fuel gas into a bypass line in the event of an emergency, and provide an inexpensive coal gasification plant. An integrated coal gasification combined cycle power generation plant includes a coal gasification furnace, a dust remover, a gas refiner, a gas turbine and the like, a main system line connecting therebetween, and a bypass line connecting between the outlet side of the coal gasification furnace in the main system line and a flare stack, wherein a dust remover bypass valve which is disposed in an upstream portion of the bypass line and which opens and closes the bypass line, a treatment gas control valve which is disposed in a downstream portion of the bypass line and which controls the flow rate, and a first inert gas input line which is disposed downstream from the dust remover bypass valve and which supplies the inert gas to the bypass line are provided.Type: ApplicationFiled: June 12, 2007Publication date: December 18, 2008Applicants: CLEAN COAL POWER R&D CO., LTD., MITSUBISHI HEAVY INDUSTRIES, LTD., HOKKAIDO ELECTRIC POWER COMPANY, INCORPORATED, TOHOKU ELECTRIC POWER CO., INC., THE TOKYO ELECTRIC POWER COMPANY, INCORPORATED, CHUBU ELECTRIC POWER CO., INC., HOKURIKU ELECTRIC POWER COMPANY, THE KANSAI ELECTRIC POWER CO., INC., THE CHUGOKU ELECTRIC POWER CO, INC., SHIKOKU ELECTRIC POWER CO., INC., KYUSHU ELECTRIC POWER CO., INC., ELECTRIC POWER DEVELOPMENT CO., LTD., CENTRAL RESEARCH INSTITUTE OF ELECTRIC POWER INDUSTRYInventors: Yuichiro Kitagawa, Osamu Shinada, Jun Wada, Yuso Oki, Naomitsu Hiratsuka, Atsushi Kimura, Katsutoshi Hiruma
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Publication number: 20080308198Abstract: There are provided an austenitic stainless steel having high stress corrosion crack resistance, characterized by containing, in percent by weight, 0.030% or less C, 0.1% or less Si, 2.0% or less Mn, 0.03% or less P, 0.002% or less S, 11 to 26% Ni, 17 to 30% Cr, 3% or less Mo, and 0.01% or less N, the balance substantially being Fe and unavoidable impurities; a manufacturing method for an austenitic stainless steel, characterized in that a billet consisting of the said austenitic stainless steel is subjected to solution heat treatment at a temperature of 1000 to 1150° C.; and a pipe and a in-furnace structure for a nuclear reactor to which the said austenitic stainless steel is applied.Type: ApplicationFiled: January 13, 2005Publication date: December 18, 2008Applicants: MITSUBISHI HEAVY INDUSTRIES, LTD., THE TOKYO ELECTRIC POWER COMPANY, INC.Inventors: Yasuhiro Sakaguchi, Toshihiko Iwamura, Hiroshi Kanasaki, Hidehito Mimaki, Masaki Taneike, Shunichi Suzuki, Kenrou Takamori, Suguru Ooki, Naoki Anahara, Naoki Hiranuma, Toshio Yonezawa
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Patent number: 7465844Abstract: This method of upgrading a biomass comprises: an upgrading step for performing upgrading treatment of a cellulose based biomass with an oxygen/carbon atomic ratio of at least 0.5, in presence of water and under a pressure of at least saturated water vapor pressure, and reducing said oxygen/carbon atomic ratio of said biomass to no more than 0.38, and a separation step for separating an upgraded reactant obtained from said upgrading step into a solid component and a liquid component.Type: GrantFiled: April 25, 2003Date of Patent: December 16, 2008Assignees: JGC Corporation, Tokyo Electric Power Company, IncorporatedInventors: Chiaki Suyama, Shinichi Tokuda, Masao Tsurui, Yoshinori Suto, Koji Tamura, Tsutomu Katagiri, Teruo Nagai, Jin Ogawa, Takeshi Yamaguchi
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Patent number: 7449101Abstract: In a method of reducing corrosion of a metal material, a substance such as semiconductor for generating an electric current by thermal excitation is coated or adhered on a metal material surface, to be exposed to a water having a high temperature of 150° C. or more, of a boiler and ducts or pipes, to which hot water heated by the boiler contacts, of a thermal electric power plant or a nuclear reactor structural material or ducts or pipes surrounding the reactor in a nuclear power plant.Type: GrantFiled: February 5, 2003Date of Patent: November 11, 2008Assignees: Kabushiki Kaisha Toshiba, The Tokyo Electric Power Company, Incorporated, Ishikawajima - Harima Heavy Industries Co., Ltd.Inventors: Masato Okamura, Yukio Henmi, Nagayoshi Ichikawa, Tetsuo Oosato, Seiji Yamamoto, Kazuo Murakami, Kenji Yamazaki, Junichi Takagi, Tadasu Yotsuyanagi, Shunichi Suzuki, Kenro Takamori, Mitsuru Sambongi, Yuichi Fukaya, Takasi Hirano
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Patent number: 7439448Abstract: A phase split structure of a superconducting cable includes three cable cores each having a shield layer provided around a superconductor, a splitter box housing the three cable cores extending from an assembly portion where the three cable cores are assembled into the cable, in a state in which the cable cores are spaced apart from each other, and an electrically-conductive connecting portion connecting respective shield layers of the cable cores to each other within the splitter box. In this way, occurrence of a large magnetic field outside the cable cores can effectively be reduced.Type: GrantFiled: May 7, 2004Date of Patent: October 21, 2008Assignees: Sumitomo Electric Industries, Ltd., The Tokyo Electric Power Company IncorporatedInventors: Takato Masuda, Hiroyasu Yumura, Yoshihisa Takahashi, Kimiyoshi Matsuo, Shoichi Honjo, Tomoo Mimura
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Patent number: 7438539Abstract: A hermetic type scroll compressor according to the invention includes a scroll compressor element in which an end plate of a orbiting scroll and an end plate of a fixed scroll are assembled such that they slide against each other, an electric motor element which drives the scroll compressor element, a hermetic casing housing the scroll compressor element and the electric motor element and holding lubricating oil collected at a bottom thereof, and an oil separator disposed on a discharge side of the scroll compressor element. An interior of the hermetic casing is kept at an intermediate pressure between a suction pressure and a discharge pressure. An oil return mechanism is provided, which intermittently returns lubricating oil from the oil separator to sliding parts of the orbiting scroll end plate and the fixed scroll end plate. The hermetic type scroll compressor 31 can be improved in performance and reliability while promoting cost reduction.Type: GrantFiled: March 24, 2006Date of Patent: October 21, 2008Assignees: Hitachi Air Conditioning Systems Co., Ltd, The Tokyo Electric Power Company, IncorporatedInventors: Hirokatsu Kohsokabe, Kazuto Higa, Kenji Tojo, Daisuke Kuboi